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1.
本文报道香桂叶精油化学成份的分离鉴定和含量测定。运用减压分馏、柱层析、薄层色谱、气相色谱和红外光谱等方法分离鉴定了3个单萜烯——α—蒎烯(1.28%)、莰烯(0.17%)和对-聚伞花素(0.14%);5个含氧单萜化台物——1,8-桉叶素(0.85%)、芳樟醇(14.35%)、α-松油醇(0.22%)、黄樟油素(69.70%)和丁香酚(4.20%);2个醛类化合物——壬醛(0.16%)和癸醛(0.40%);2个倍半萜烯——β-丁香烯(0.11%)和β-甜没药烯(0.05%);1个倍半萜含氧化合物——橙花叔醇(0.75%)等13个成份。另外,还测定了不同月份的植物精油主要成份的含量变化。  相似文献   

2.
GC-MS分析甜菊叶的挥发性成分   总被引:1,自引:0,他引:1  
甜菊(Stevia rebaudianum Bertohi)叶经固相微萃取(SPME)和同时蒸馏萃取(SDE),用气相色谱/质谱法(GC-MS)检测其挥发性成分.从甜菊叶中共检出101种化学物质,其中从SPME萃取物中检出67种,SDE萃取物中检出80种,二者共有组分46种.主要成分为反式-α-香柠檬烯、β-蒎烯、石竹烯氧化物、匙叶桉油烯醇、橙花叔醇等,其主要成分与菊科(Compositac)其他植物的明显不同.  相似文献   

3.
利用GC-MS技术分析油橄榄叶挥发油化学成分   总被引:1,自引:0,他引:1  
本文采用同时蒸馏萃取法(SDE)提取油橄榄叶挥发油化学成分,利用气相色谱-质谱(GC-MS)联用方法分析并用峰面积归一化法得出各化学成分在挥发油中的百分含量。结果从油橄榄叶挥发油中分离出62各色谱峰,鉴定出56个化合物,占挥发性组分总量的95.6%。其中主要成分为α-芹子烯(13.13%)、β-芹子烯(10.15%)、β-石竹烯(14.29%)、橙花叔醇(6.72%)、α-石竹烯(6.60%)、3-己烯-1-醇(5.03%)、苯乙醛(5.61%)等。  相似文献   

4.
采用水蒸气蒸馏法提取石山巴豆和毛果巴豆叶中的挥发油,利用GC-MS联用仪对其化学成分进行分析和鉴定,以归一化法计算各个化学成分的相对含量。结果表明:从石山巴豆叶鉴定出39种化合物,占总量的95.96%,主要成分是α-松油醇(17.57%)、桉树醇(11.13%)、乙酸松油酯(9.07%)、倍半水芹烯(8.52%)等;从毛果巴豆叶鉴定出55种化合物,占总量的97.8%,以反式-橙花叔醇(9.48%)、α-松油醇(7.51%)、桉树醇(6.43%)、乙酸松油酯(6.72%)为主要成分。两种植物叶中的挥发油成分均以萜醇、倍半萜烯为主,并且其中多种成分具有生物活性,因此研究结果可为石山巴豆和毛果巴豆的开发利用提供科学依据。  相似文献   

5.
深山含笑叶片的挥发油成分及其生物活性研究   总被引:1,自引:1,他引:0  
采用水蒸气蒸馏法及GC-MS联用技术提取并分析了深山含笑(Michelia maudiae Dunn)叶片的挥发油成分,并用杯碟法和Alamar blue法检测了其抑菌和抗肿瘤生物活性。从深山含笑挥发油中共分离出45种化合物,并鉴定出其中37种化合物,占挥发油总相对含量的97.8%;挥发油主要成分有莰烯(16.575%)、β-蒎烯(15.857%)、D-柠檬烯(12.653%)、丁香烯(11.923%)、1R-α-蒎烯(6.855%)及橙花叔醇(5.199%)等。该挥发油对金黄色葡萄球菌(Staphalococus aureus Rosenbach)和红酵母(Rhodotorula glutinisTrans.)有一定的抑制能力;对人非小细胞肺癌细胞(NCI-H460)有较强的抑制作用,浓度为100 mg.L-1,抑制率可达98.89%以上。  相似文献   

6.
采用顶空固相微萃取-气相色谱-质谱联用技术对产自国内外4个地区的丁香(Eugenia caryophyllata Thunb.)挥发性成分进行了检测,并以峰面积归一化法计算了各组分的相对含量。结果显示,从4个产地13批次丁香中共鉴定出挥发性成分72种(匹配度均高于75),其中,主要成分含量排名前两位的均为丁香酚、(-)-α-芹子烯,排名第三位的挥发性成分分别为:顺式-α-没药烯(马达加斯加塔马塔夫,平均为3.75%)、罗勒烯(中国广东,平均为4.21%)、亚麻三烯(中国广西,平均为3.74%)、丁香烯(印度尼西亚爪哇岛,平均为3.60%)。表明同一产地的丁香挥发性成分具有一定的相似性,不同产地丁香挥发性成分也有一定的差异,这对丁香产地的鉴别具有重要意义。主成分分析和聚类分析的结果既可以将4个产地的丁香很好地区分开来,又能反映出它们之间的亲缘关系。本研究采用HS-SPME-GC-MS方法检测不同产地丁香挥发性成分并结合主成分分析(PCA)及聚类分析法,能有效区分4个产地的丁香,该方法可作为丁香产地的鉴别方法,也为进一步比较不同产地丁香挥发性成分的差异及质量控制提供了新思路。  相似文献   

7.
应用毛细管气相色谱标准样品叠加法和色谱-质谱-计算机联用技术分析了巴山冷杉(Abies fargesii Franch. )针叶精油的化学成分。从气相色谱分离出的225个色谱峰中,初步鉴定出43个组分,占精油总量的94.15%,主要成分为α-蒎烯(13.25%)、柠檬烯(10.82%)、石竹烯(10.75%)、莰烯(10.40%)、乙酸龙脑酯(6.9%)、γ-杜松烯(6.28%)、α-蛇麻烯(3.97%)、檀烯(3.52%)、芳萜醇(3.02%)、α-依兰油烯(2.76%)、β-甜没药醇(2.56%)及α-橙花叔醇(2.54%)等。  相似文献   

8.
探讨襄荷不同部位的挥发性成分差异,以便从襄荷植株提取天然香料成分。本研究采用顶空固相微萃取法结合气相色谱-质谱联用技术(HS-SPME-GC-MS)测定襄荷不同部位(根、茎、叶、花苞)中的挥发性成分。结果表明:从襄荷四个部位中共鉴定了197种化合物,其中根92种,茎67种,叶64种,花苞96种。烯烃类和醇类化合物是各部位中的主要挥发性化合物,而桧烯(sabinene)为根和花苞中含量最高的化合物,约占13%,但在叶中的含量只有1.98%。β-蒎烯(β-pinene)为茎和叶中含量最高的化合物,在叶中的含量占到53.46%。此外,α-蒎烯(α-pinene)、隐品酮(cryptone)、α-松油醇(α-terpineol)等化合物在襄荷各部位挥发性成分中的占比也较高。襄荷不同部位中均有其特殊的挥发性成分,共有的挥发性成分为23种。  相似文献   

9.
为了解睡莲花朵的致香物质,利用气相色谱-质谱法对62个栽培种花朵的挥发性成分进行了研究。结果表明,共检测出72种挥发性成分,以烯烃类(26种)、烷烃类(11种)和醇类(9种)较多,其中花香成分有53种(73.60%)。40个热带睡莲花朵中共检测出56种挥发性成分,其中花香成分39种;22个耐寒睡莲品种花朵共检测出37种挥发性成分,其中花香成分27种。花香成分中主要致香物质有乙酸苄酯、顺式-罗勒烯、苯甲醇、金合欢烯、月桂烯、柠檬烯、苯甲醛、α-异松油稀、α-蒎烯、肉桂醇和β-丁香醇等。利用组内联接余弦的方法,分别根据挥发性成分和花香成分,62个睡莲栽培种(品种)可分成3和4组。这为睡莲香气物质的开发利用及与传粉动物的协同进化研究提供了基础资料。  相似文献   

10.
海南木莲叶挥发油化学成分研究   总被引:3,自引:0,他引:3  
目的:分析海南木莲叶的挥发油成分。方法:采用水蒸气法提取挥发油,气相色谱-质谱-计算机联用技术分析。结果:共鉴定出49种化合物,占挥发油总量的99.99%,其中主要成分是橙花叔醇(16.44%);3,7-二甲基-2,6-辛二烯-1-醇(5.27%);3,7-二甲基1,6-辛二烯-3-醇(5.12%);α-丁香烯(4.97%)和丁香烯(4.48%)。  相似文献   

11.
The essential oil of a Canary Islands endemic species, Lavandula canariensis (L.) Mill., gathered from Australia, was extracted by hydrodistillation and solid phase micro-extraction (SPME). The oils have been studied by GC and GC–MS. A total of 38 compounds have been identified in the leaf oil extracted by hydrodistillation, the principal components being carvacrol (23.6%), β-bisabolene (20.8%), (E,E)-α-farnesene (11.3%), β-caryophyllene (7.6%) and carvacrol methyl ether (7.3%), while the oil extracted by SPME showed carvacrol (42.6%) as the principal component with moderate amounts of (E,E)-α-farnesene (9.1%), β-bisabolene (7.5%), cis-hex-3-en-1-ol (5.6%) and carvacrol methyl ether (4.6%). SPME extracts indicated that carvacrol, cis-hex-3-en-1-ol and linalool were in greater concentration in the head space vapours than in the oil. This is the first report describing the essential oil composition of this species.  相似文献   

12.
Monoterpenoids and sesquiterpene hydrocarbons of Abies balsamea cortical oleoresin (Canada balsam) were analyzed by a combination of chromatographic and spectroscopic methods. Monoterpene hydrocarbons (21%) were composed of β-pinene, α-pinene, β-phellandrene, limonene, 3-carene, myrcene and camphene (listed in order of decreasing percentages), and oxygenated monoterpenes (0·4%) contained 4,4-dimethyl-2-cyclohepten-1-one, linalool, bornyl acetate, methylthymol, citronellyl acetate, α-terpineol, piperitone, citronellal, borneol, citronellol, two unknowns, and geraniol. From the sesquiterpene hydrocarbon fraction (1·1%) were isolated: longifolene, β-bisabolene, longipinene, an unknown, sativene, cyclosativene, cis-α-bisabolene, β-himachalene, α-himachalene, β-caryophyllene, γ-humulene, farnesene, longicyclene, an unknown, and β-selinene. Both himachalenes have been identified for the first time in Pinaceae outside of Cedrus; their co-occurrence with γ-humulene, longifolene, longipinene and longicyclene supports the biosynthetic mechanism by which all of these compounds arise through initial 1/11 cyclization of tran-cis-farnesylphosphate.  相似文献   

13.
Wild guava trees (Psidium guajava) in Fiji can be classified into three main chemotypes on the basis of the relative amounts of sesquiterpene hydrocarbons present in the leaf essential oils. The principal components include caryophyllene, β-bisabolene, aromadendrene, β-selinene, nerolidiol, caryophyllene oxide and sel-11-en-4α-ol.  相似文献   

14.
鸭儿芹根、茎、叶挥发油的化学成分   总被引:1,自引:1,他引:0  
采用水蒸气蒸溜法提取其根、茎、叶中的挥发油,利用GC-MS联用仪对其化学成分进行分析,以归一化法计算各个化学成分的相对含量.鸭儿芹根挥发油中共分离出11个峰,鉴定出11种化合物,占总离子峰的98.61%,主要成分为α-芹子烯、γ-芹子烯等;茎中共分离出25个峰,鉴定出25种化合物,占总离子峰的100.00%,主要成分为...  相似文献   

15.
Samples of the aroma volatiles of globe artichoke and Jerusalem artichoke were obtained by well established methods and were analysed by routine GC and GC/MS. Eight sesquiterpene hydrocarbons afforded the major group of components (over 42%) in globe artichoke samples, with β-selinene (ca 32%) as the main constituent. Previously reported caryophyllene could not be detected. α-Cedrene was found to have globe artichoke aroma characteristics on odour evaluation of separated components at an odour port at the exit of the GC column. Jerusalem artichoke samples contained one major component (β-bisabolene, ca 51%) and a range of saturated long-chain hydrocarbons (ca 22%). The sesquiterpene presumably contributes appreciably to the characteristic flavour of Jerusalem artichoke. Both types of artichoke gave a low concentration of total volatiles.  相似文献   

16.
To evaluate the chemotaxonomic significance of the essential oils of 23 populations of 18 Iranian Ferula species, the chemical composition of the oils was investigated by GC/FID and GC/MS. Altogether, 84 constituents, representing 81.3-99.7% of the total composition of the oils, have been identified. The composition of six species of the genus, i.e., F. oopoda, F. foetida, F. behboudiana, F. diversivittata, F. galbaniflua, and F. hezarlalehzarica, has been reported for the first time. The main constituents identified were α-terpinyl acetate (73.3%), 2,3,4-trimethylthiophene (2; 49.0%), sabinene (75.3%), verbenone (5; 69.4%), β-pinene (59.0-66.3%), and (Z)-β-ocimene (41.7%). Cluster analysis (CA) of the percentage content of the essential oil components of the Ferula species resulted in the characterization of four groups, i.e., taxa containing either i) monoterpene hydrocarbons, ii) oxygenated monoterpenes, iii) organosulfur compounds, or iv) monoterpene, sesquiterpene, and aliphatic hydrocarbons as the principal classes of compounds. Based on the results obtained, the chemical independence of F. hirtella from F. szowitsiana and of F. galbaniflua from F. gummosa at the specific level was concluded and their positions as distinct species were confirmed. The chemotaxonomic relationships among the representatives of the genus Ferula have been discussed in detail.  相似文献   

17.
GC-MS法分析曼陀罗挥发油的化学成分   总被引:6,自引:0,他引:6  
用水蒸气蒸馏法从曼陀罗中提取挥发油,并用气相色谱/质谱联用技术(GC-MS)对挥发油的化学成分进行分离鉴定,用气相色谱峰面积归一化法确定各组分的相对含量.结果从曼陀罗挥发油中鉴定出58种化合物,占总挥发油量的92.37%.其中主要成分为5,6-二氢-6-戊基-2H-吡喃-2-酮(44.29%)、二苯胺(12.50%)、四十四烷(10.41%)、二十烷(4.19%)、(E)-3-己烯-1-醇(2.38%)、3,7,11,15-四甲基-2-十六碳烯-1-醇(2.28%)等.  相似文献   

18.
The fresh leaves and brine of leaves of Thymbra spicata var. spicata (KARAKIZ) were analyzed by hydrodistillation, headspace and GC/MS techniques. The main components were determined as carvacrol, p-cymene, beta-myrcene, gamma-terpinene, a-terpinene and trans-caryophyllene. The essential oil and the main compounds, carvacrol and trans-caryophyllene, have been tested against E. coli, S. epidermidis, B. subtilis, S. aureus, S. typhimurium, K. pneumoniae, P aeruginosa, E. faecalis and C. albicans. While the essential oil and carvacrol showed strong activity against all microorganisms, except P. aeruginosa, trans-caryophyllene showed activity only against C. albicans. The essential oil and carvacrol also showed strong antimycobacterial activity.  相似文献   

19.
Composition of essential oils of different populations of Thymus richardii grex of six localities from Bosnia-Herzegovina (Konjic, Borci), Spain (Majorca, Ibiza, Valencia) and Italy (Marettimo, Sicily) were determined by GC/FID and GC/MS. The main constituents in most of the samples were aromatic monoterpenes corresponding to non-phenolic cyclic compounds (p-cymene, γ-terpinene). The highest monoterpene concentrations were found in the Bosnian samples (70%), and the lowest in samples from the Balearic Islands (<30%; Ibiza and Majorca). Sesquiterpenes were the major component (average > 50%) in samples from Majorca with β-bisabolene (>40%) being the principal constituent. Discriminant analysis (LDA) shows the differentiation of two chemotypes: A (phenol chemotype), with p-cymene and γ-terpinene as characteristic compounds and B, with β-bisabolene and carvacrol, as major and significative compounds. The occurrence of the chemotypes was related to summer positive precipitation and to deep of soils.  相似文献   

20.
贵州刺槐花精油的化学成分   总被引:8,自引:0,他引:8  
刺槐(Robima Pseudoacacia L.)花精油,用 Finn(?)gan-4510色谱/质谱/计算机联用仪分析,共检出43个成分,鉴定了其中38个化合物,占全精油的97.70%。主要成分为已酸乙酯(0.20%),苯甲醇(0.17%),芳樟醇(3.11%)苯乙醇(12.07%),辛酸乙酯(0.13%),香叶醇(2.14%),王内酯(0.86%),特檀香醇(0.21%),橙花叔醇(0.89%)等。  相似文献   

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